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顶端连接复合体与细胞极性。

Apical junctional complexes and cell polarity.

作者信息

Wang Q, Margolis B

机构信息

Department of Internal Medicine and Biological Chemistry, University of Michigan Medical School, Ann Arbor, Michigan 48109-2200, USA.

出版信息

Kidney Int. 2007 Dec;72(12):1448-58. doi: 10.1038/sj.ki.5002579. Epub 2007 Oct 3.

Abstract

Recent studies have greatly expanded our knowledge of initial events that lead to epithelial cell polarity. Epithelial polarity is defined, in part, by apical cell-cell tight junctions that separate the plasma membrane into the apical domain and the basolateral domain, as well as the zonula adherens that mediate intercellular adhesion. The process of epithelial polarization is closely coupled to the biogenesis of these junctions. Studies in mammalian epithelial cells and lower organisms have identified two evolutionarily conserved junctional complexes as important epithelia polarity regulators: the Crumbs complex and the partitioning defective complex. Disruption of the components of the two complexes leads to a disorder of epithelial cell polarity and defects in junction formation or maintenance. Recent discoveries have revealed more details of how the two junctional polarity complexes function to establish epithelial polarity. They also raised the question about the relationship between polarity and adhesion. Although it is widely accepted that cell-cell adhesion provides a landmark from which polarity can proceed, there are results pointing to the possibility that polarity complexes can regulate cell-cell adhesion. It seems likely that proteins that control cell adhesion and cell polarity work intimately together to establish final epithelial polarity.

摘要

最近的研究极大地扩展了我们对导致上皮细胞极性的初始事件的认识。上皮极性部分由将质膜分隔为顶端结构域和基底外侧结构域的顶端细胞间紧密连接以及介导细胞间黏附的黏着带所定义。上皮极化过程与这些连接的生物发生密切相关。对哺乳动物上皮细胞和低等生物的研究已确定两种进化上保守的连接复合体是重要的上皮极性调节因子:Crb复合体和Par复合体。这两种复合体的组分受到破坏会导致上皮细胞极性紊乱以及连接形成或维持方面的缺陷。最近的发现揭示了这两种连接极性复合体如何发挥作用以建立上皮极性的更多细节。它们还引发了关于极性与黏附之间关系的问题。尽管人们普遍认为细胞间黏附提供了极性得以形成的标志,但有结果表明极性复合体可能调节细胞间黏附。控制细胞黏附和细胞极性的蛋白质似乎很可能共同密切协作以建立最终的上皮极性。

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